|
/KREQC
|
KREQC
|
|
|
/EXHIBITS/SC25/
|
SC25 Research Exhibit
|
|
|
/kcs250305.pdf
|
PDF
|
|
|
/EXHIBITS/SC24/
|
SC24 Research Exhibit
|
|
|
/EXHIBITS/SC23/
|
SC23 Research Exhibit
|
|
|
/EXHIBITS/SC22/
|
SC22 Research Exhibit
|
|
|
/lcpc20221014.pdf
|
PDF
|
|
|
/KREQC/asme20220714.pdf
|
PDF
|
|
|
/icrc20211202a.pdf
|
PDF
|
|
|
/Basic_Operations_And_Structure_Of_An_FPGA_Accelerator_For_Parallel_Bit_Pattern_Computation.pdf
|
PDF
|
|
|
/EXHIBITS/SC21/
|
SC21 Research Exhibit
|
|
|
/KREQC/icpp20210809.pdf
|
PDF
|
|
|
/KREQC/icpp2021.pdf
|
PDF
|
|
|
/EXHIBITS/SC20/
|
SC20 Research Exhibit
|
|
|
/KREQC/lcpc20201015.pdf
|
PDF
|
|
|
/KREQC/lcpc20201015pre.pdf
|
PDF
|
|
|
/EXHIBITS/SC19/
|
SC19 Research Exhibit
|
|
|
/KREQC/pbpc20191021.pdf
|
PDF
|
|
|
/KREQC/igscc19.pdf
|
PDF
|
|
|
/KREQC/glacqc20190215.pdf
|
PDF
|
|
|
/KREQC/glacqc20190213.pdf
|
PDF
|
|
|
/EXHIBITS/SC18/
|
SC18 Research Exhibit
|
|
|
/GLC/glacqc.pdf
|
PDF
|
|
|
/EXHIBITS/SC17/
|
SC17 Research Exhibit
|
|
|
/hlcyg.pdf
|
PDF
|
|
|
/PBP20220731.tgz
|
<tt>PBP20220731.tgz</tt>
|
|
|
/PBP20220730.tgz
|
<tt>PBP20220730.tgz</tt>
|
|
|
/pbp20220704.h
|
<tt>pbp20220704.h</tt>
|
|
|
/pbpdemo20220704.cpp
|
<tt>pbpdemo20220704.cpp</tt>
|
|
|
/pbpcref251114.pdf
|
<tt>pbpcref251114.pdf</tt>
|
|
|
/pbpcref20220704.pdf
|
<tt>pbpcref20220704.pdf</tt>
|
|
|
/EXHIBITS/SC24/
|
University of Kentucky / Aggregate.Org research exhibit,
IEEE/ACM SC2024
<li>
November 2023,
<a href="https://aggregate.org/EXHIBITS/SC23/">University of Kentucky / Aggregate.Org research exhibit,
IEEE/ACM SC2023
<li>
November 2022,
<a href="https://aggregate.org/EXHIBITS/SC22/">University of Kentucky / Aggregate.Org research exhibit,
IEEE/ACM SC2022
<li>
December 2, 2021, we virtually presented <a href="https://doi.org/10.1109/ICRC53822.2021.00029">Basic Operations And
Structure Of An FPGA Accelerator For Parallel Bit Pattern Computation</a> at
<a href="https://icrc.ieee.org/">IEEE International Conference on Rebooting
Computing (ICRC 2021)</a>
<li>
August 9, 2021, Prof. Dietz virtually presented "Tangled: A Conventional
Processor Integrating A Quantum-Inspired Coprocessor," at ICPP 2021 (<a href="KREQC/icpp20210809.pdf">slides</a>, <a href="KREQC/icpp2021.pdf">paper</a>).
<li>
October 15, 2020, Dietz presented A Quantum-Inspired Model For Bit-Serial
SIMD-Parallel Computation (<a href="KREQC/lcpc20201015.pdf">slides</a>, <a href="KREQC/lcpc20201015pre.pdf">preprint</a>) at <a href="https://lcpc2020.cs.stonybrook.edu/">LCPC 2020 Conference</a>
(virtually hosted by Stony Brook University).
<li>
October 21, 2019, Prof. Dietz gave the talk, Parallel Bit Pattern Computing
(<a href="KREQC/pbpc20191021.pdf">slides</a>, <a href="KREQC/igscc19.pdf">paper preprint</a>), at the <a href="https://sites.google.com/view/cut-2019">Workshop on Computing with Unconventional Technologies (CUT)</a> at the <a href="https://www.igscc.org/">10th International Green and Sustainable
Computing Conference</a>
<li>
February 15, 2019, Prof. Dietz gave the talk, A Gate-Level Approach To
Compiling For Quantum Computers (<a href="KREQC/glacqc20190215.pdf">PDF
slides</a>, <a href="https://nanohub.org/resources/30169/watch?resid=30170">video at nanoHUB</a>), at the Purdue University School of Electrical and
Computer Engineering. This is the "extended dance remix version" of the
previous talk by the same name.
<li>
February 13, 2019, Prof. Dietz gave the talk, A Gate-Level Approach To
Compiling For Quantum Computers (<a href="https://www.youtube.com/watch?v=lKW02FvOi_s&feature=youtu.be">video</a>, <a href="KREQC/glacqc20190213.pdf">PDF slides</a>), at the
University of Kentucky Computer Science Department's <a href="http://www.cs.uky.edu/~raphael/grad/keepingCurrent.html">Keeping
Current</a> seminar.
<li>
December 13, 2018, <a href="http://aggregate.org/KREQC/">KREQC</a>
(pronounced "creek") is <em>Kentucky's Rotationally Emulated Quantum
Computer</em>. This 6-qubit quantum computer is driven by servos rather than
exotic physics, but it provides a very visible way to understand quantum
computing. Both a complete simulator and the actual hardware are freely
available for anyone to run programs via the WWW interface; the simulator
gives complete trace and results, running on the hardware returns a video of
the run.
<li>
<a href="/KREQC">KREQC</a> (pronounced "creek") is Kentucky's Rotationally
Emulated Quantum Computer. It's a bit of a joke, but it's also a great way to
be introduced to the fundamentals of Quantum computing as a computing model,
as opposed to the interesting physics that underlie Quantum computer
implementations.
<li>
October 22-24, 2018, Presented <em>A Gate-Level Approach To Compiling For
Quantum Computers</em> at <a href="https://www.igscc.org/">The 9th
International Green And Sustainable Computing Conference</a>. The full paper
is available from the conference site and slides from our presentation are
available here as a <a href="GLC/glacqc.pdf">PDF</a>.
<li>
October 11-12, 2017, Prof. Dietz presented <a href="hlcyg.pdf">How
Low Can You Go?</a> and will be on the panel <em>Compilers and Languages for
Parallel Computing - What have we Achieved?</em> at <a href="https://parasol.tamu.edu/lcpc2017/program.html">LCPC 2017</a>. <a href="hankd/whwa20171012.pdf">Here</a> are my slides from the panel....
</li></a></li></a></li>
|
|
|
/EXHIBITS/SC23/
|
University of Kentucky / Aggregate.Org research exhibit,
IEEE/ACM SC2023
<li>
November 2022,
<a href="https://aggregate.org/EXHIBITS/SC22/">University of Kentucky / Aggregate.Org research exhibit,
IEEE/ACM SC2022
<li>
December 2, 2021, we virtually presented <a href="https://doi.org/10.1109/ICRC53822.2021.00029">Basic Operations And
Structure Of An FPGA Accelerator For Parallel Bit Pattern Computation</a> at
<a href="https://icrc.ieee.org/">IEEE International Conference on Rebooting
Computing (ICRC 2021)</a>
<li>
August 9, 2021, Prof. Dietz virtually presented "Tangled: A Conventional
Processor Integrating A Quantum-Inspired Coprocessor," at ICPP 2021 (<a href="KREQC/icpp20210809.pdf">slides</a>, <a href="KREQC/icpp2021.pdf">paper</a>).
<li>
October 15, 2020, Dietz presented A Quantum-Inspired Model For Bit-Serial
SIMD-Parallel Computation (<a href="KREQC/lcpc20201015.pdf">slides</a>, <a href="KREQC/lcpc20201015pre.pdf">preprint</a>) at <a href="https://lcpc2020.cs.stonybrook.edu/">LCPC 2020 Conference</a>
(virtually hosted by Stony Brook University).
<li>
October 21, 2019, Prof. Dietz gave the talk, Parallel Bit Pattern Computing
(<a href="KREQC/pbpc20191021.pdf">slides</a>, <a href="KREQC/igscc19.pdf">paper preprint</a>), at the <a href="https://sites.google.com/view/cut-2019">Workshop on Computing with Unconventional Technologies (CUT)</a> at the <a href="https://www.igscc.org/">10th International Green and Sustainable
Computing Conference</a>
<li>
February 15, 2019, Prof. Dietz gave the talk, A Gate-Level Approach To
Compiling For Quantum Computers (<a href="KREQC/glacqc20190215.pdf">PDF
slides</a>, <a href="https://nanohub.org/resources/30169/watch?resid=30170">video at nanoHUB</a>), at the Purdue University School of Electrical and
Computer Engineering. This is the "extended dance remix version" of the
previous talk by the same name.
<li>
February 13, 2019, Prof. Dietz gave the talk, A Gate-Level Approach To
Compiling For Quantum Computers (<a href="https://www.youtube.com/watch?v=lKW02FvOi_s&feature=youtu.be">video</a>, <a href="KREQC/glacqc20190213.pdf">PDF slides</a>), at the
University of Kentucky Computer Science Department's <a href="http://www.cs.uky.edu/~raphael/grad/keepingCurrent.html">Keeping
Current</a> seminar.
<li>
December 13, 2018, <a href="http://aggregate.org/KREQC/">KREQC</a>
(pronounced "creek") is <em>Kentucky's Rotationally Emulated Quantum
Computer</em>. This 6-qubit quantum computer is driven by servos rather than
exotic physics, but it provides a very visible way to understand quantum
computing. Both a complete simulator and the actual hardware are freely
available for anyone to run programs via the WWW interface; the simulator
gives complete trace and results, running on the hardware returns a video of
the run.
<li>
<a href="/KREQC">KREQC</a> (pronounced "creek") is Kentucky's Rotationally
Emulated Quantum Computer. It's a bit of a joke, but it's also a great way to
be introduced to the fundamentals of Quantum computing as a computing model,
as opposed to the interesting physics that underlie Quantum computer
implementations.
<li>
October 22-24, 2018, Presented <em>A Gate-Level Approach To Compiling For
Quantum Computers</em> at <a href="https://www.igscc.org/">The 9th
International Green And Sustainable Computing Conference</a>. The full paper
is available from the conference site and slides from our presentation are
available here as a <a href="GLC/glacqc.pdf">PDF</a>.
<li>
October 11-12, 2017, Prof. Dietz presented <a href="hlcyg.pdf">How
Low Can You Go?</a> and will be on the panel <em>Compilers and Languages for
Parallel Computing - What have we Achieved?</em> at <a href="https://parasol.tamu.edu/lcpc2017/program.html">LCPC 2017</a>. <a href="hankd/whwa20171012.pdf">Here</a> are my slides from the panel....
</li></a></li>
|
|
|
/EXHIBITS/SC22/
|
University of Kentucky / Aggregate.Org research exhibit,
IEEE/ACM SC2022
<li>
December 2, 2021, we virtually presented <a href="https://doi.org/10.1109/ICRC53822.2021.00029">Basic Operations And
Structure Of An FPGA Accelerator For Parallel Bit Pattern Computation</a> at
<a href="https://icrc.ieee.org/">IEEE International Conference on Rebooting
Computing (ICRC 2021)</a>
<li>
August 9, 2021, Prof. Dietz virtually presented "Tangled: A Conventional
Processor Integrating A Quantum-Inspired Coprocessor," at ICPP 2021 (<a href="KREQC/icpp20210809.pdf">slides</a>, <a href="KREQC/icpp2021.pdf">paper</a>).
<li>
October 15, 2020, Dietz presented A Quantum-Inspired Model For Bit-Serial
SIMD-Parallel Computation (<a href="KREQC/lcpc20201015.pdf">slides</a>, <a href="KREQC/lcpc20201015pre.pdf">preprint</a>) at <a href="https://lcpc2020.cs.stonybrook.edu/">LCPC 2020 Conference</a>
(virtually hosted by Stony Brook University).
<li>
October 21, 2019, Prof. Dietz gave the talk, Parallel Bit Pattern Computing
(<a href="KREQC/pbpc20191021.pdf">slides</a>, <a href="KREQC/igscc19.pdf">paper preprint</a>), at the <a href="https://sites.google.com/view/cut-2019">Workshop on Computing with Unconventional Technologies (CUT)</a> at the <a href="https://www.igscc.org/">10th International Green and Sustainable
Computing Conference</a>
<li>
February 15, 2019, Prof. Dietz gave the talk, A Gate-Level Approach To
Compiling For Quantum Computers (<a href="KREQC/glacqc20190215.pdf">PDF
slides</a>, <a href="https://nanohub.org/resources/30169/watch?resid=30170">video at nanoHUB</a>), at the Purdue University School of Electrical and
Computer Engineering. This is the "extended dance remix version" of the
previous talk by the same name.
<li>
February 13, 2019, Prof. Dietz gave the talk, A Gate-Level Approach To
Compiling For Quantum Computers (<a href="https://www.youtube.com/watch?v=lKW02FvOi_s&feature=youtu.be">video</a>, <a href="KREQC/glacqc20190213.pdf">PDF slides</a>), at the
University of Kentucky Computer Science Department's <a href="http://www.cs.uky.edu/~raphael/grad/keepingCurrent.html">Keeping
Current</a> seminar.
<li>
December 13, 2018, <a href="http://aggregate.org/KREQC/">KREQC</a>
(pronounced "creek") is <em>Kentucky's Rotationally Emulated Quantum
Computer</em>. This 6-qubit quantum computer is driven by servos rather than
exotic physics, but it provides a very visible way to understand quantum
computing. Both a complete simulator and the actual hardware are freely
available for anyone to run programs via the WWW interface; the simulator
gives complete trace and results, running on the hardware returns a video of
the run.
<li>
<a href="/KREQC">KREQC</a> (pronounced "creek") is Kentucky's Rotationally
Emulated Quantum Computer. It's a bit of a joke, but it's also a great way to
be introduced to the fundamentals of Quantum computing as a computing model,
as opposed to the interesting physics that underlie Quantum computer
implementations.
<li>
October 22-24, 2018, Presented <em>A Gate-Level Approach To Compiling For
Quantum Computers</em> at <a href="https://www.igscc.org/">The 9th
International Green And Sustainable Computing Conference</a>. The full paper
is available from the conference site and slides from our presentation are
available here as a <a href="GLC/glacqc.pdf">PDF</a>.
<li>
October 11-12, 2017, Prof. Dietz presented <a href="hlcyg.pdf">How
Low Can You Go?</a> and will be on the panel <em>Compilers and Languages for
Parallel Computing - What have we Achieved?</em> at <a href="https://parasol.tamu.edu/lcpc2017/program.html">LCPC 2017</a>. <a href="hankd/whwa20171012.pdf">Here</a> are my slides from the panel....
</li>
|
|
|
/KREQC/icpp20210809.pdf
|
slides
|
|
|
/KREQC/icpp2021.pdf
|
paper
|
|
|
/KREQC/lcpc20201015.pdf
|
slides
|
|
|
/KREQC/lcpc20201015pre.pdf
|
preprint
|
|
|
/KREQC/pbpc20191021.pdf
|
slides
|
|
|
/KREQC/igscc19.pdf
|
paper preprint
|
|
|
/KREQC/glacqc20190215.pdf
|
PDF
slides
|
|
|
/KREQC/glacqc20190213.pdf
|
PDF slides
|
|
|
/KREQC/
|
KREQC
|
|
|
/KREQC
|
KREQC
|
|
|
/GLC/glacqc.pdf
|
PDF
|
|
|
/hlcyg.pdf
|
How
Low Can You Go?
|
|
|
/hankd/whwa20171012.pdf
|
Here
|
|